Jamie R. Williams, Ph.D.

Affiliations: 
2004 University of Illinois at Chicago, Chicago, IL, United States 
Area:
Biomedical Engineering, Mechanical Engineering, Medicine and Surgery
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"Jamie Williams"

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Raghu N. Natarajan grad student 2004 University of Illinois, Chicago
 (Numerical investigation of lumbar disc injury under cyclic loading conditions.)
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Publications

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Natarajan RN, Williams JR, Lavender SA, et al. (2008) Relationship between disc injury and manual lifting: a poroelastic finite element model study. Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine. 222: 195-207
Williams JR, Natarajan RN, Andersson GB. (2007) Inclusion of regional poroelastic material properties better predicts biomechanical behavior of lumbar discs subjected to dynamic loading. Journal of Biomechanics. 40: 1981-7
Natarajan RN, Williams JR, Lavender SA, et al. (2007) Poro-elastic finite element model to predict the failure progression in a lumbar disc due to cyclic loading Computers and Structures. 85: 1142-1151
Natarajan RN, Williams JR, Lavender SA, et al. (2007) Relationship between lumbar disc injury and manual lifting - A finite element model study Proceedings of the Asme Summer Bioengineering Conference 2007, Sbc 2007. 293-294
Natarajan RN, Williams JR, Andersson GB. (2006) Modeling changes in intervertebral disc mechanics with degeneration. The Journal of Bone and Joint Surgery. American Volume. 88: 36-40
Natarajan RN, Williams JR, Andersson GB. (2004) Recent advances in analytical modeling of lumbar disc degeneration. Spine. 29: 2733-41
Williams JR, Natarajan RN, Andersson GBJ. (2004) Prediction of endplate bulging with and without inclusion of physiological swelling pressure and strain dependent permeability and porosity Advances in Bioengineering, Bed. 207-208
Natarajan RN, Williams JR, Andersson GBJ. (2003) Finite element model of a lumbar spinal motion segment to predict circadian variation in stature Computers and Structures. 81: 835-842
Williams JR. (1988) Contact analysis of large numbers of interacting bodies using discrete modal methods for simulating material failure on the microscopic scale* Engineering Computations. 5: 198-209
Williams JR. (1980) Similar and chevron folds in multilayers using finite-element and geometric models Tectonophysics. 65: 323-338
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